1. Module 1: CFD Foundations and Fluent Workflow (Week 1)
- •Basics of Computational Fluid Dynamics
- •Introduction to ANSYS Fluent
- •CFD workflow and how each step connects
- •Applications of CFD across engineering domains
- •ANSYS Workbench overview
Learn CFD workflow, mesh generation, solver setup, and post-processing with ANSYS Fluent, ANSYS Workbench, ANSYS Meshing, SpaceClaim, and CFD-Post. This online course is built for learners who want practical simulation skills they can use in mechanical, aerospace, automotive, HVAC, and energy roles.
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Learning CFD is only half the plan. The other half is showing employers that you can handle model preparation, meshing, solver setup, and result interpretation with confidence, which is where placement support matters. Inventateq keeps the training tied to the kinds of roles companies actually hire for, such as CFD Engineer, Simulation Engineer, Thermal Analyst, and Design Engineer.
Support is built around the course timeline, not left for the last week. As the projects move from pipe flow to heat exchangers and airfoil or HVAC cases, learners also get resume inputs, interview practice, and guidance on how to present their simulation work clearly.
CFD and simulation roles are hired across automotive, aerospace, manufacturing, HVAC, and energy teams in India and global support centers. Pay usually rises with project ownership, solver depth, and how well you can defend simulation results in front of design and product teams.
ANSYS Fluent Average Salary by Experience
CFD and simulation roles are hired across automotive, aerospace, manufacturing, HVAC, and energy teams in India and global support centers. Pay usually rises with project ownership, solver depth, and how well you can defend simulation results in front of design and product teams.
ANSYS Fluent Average Salary by Experience
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Inventateq has supported learners with job-focused technical training across multiple domains, and the teaching style stays practical rather than theory-heavy. For the ANSYS Fluent online course, that means the sessions are built around how CFD work is actually done, from geometry prep to post-processing and project review.
We stand apart through our commitment to:

Attend live, instructor-led classes from anywhere with the same hands-on structure as our classroom batches. Follow along step-by-step, get real-time doubt support, and revisit recordings whenever you need to.
Good fit if you want a simulation foundation before placements or higher studies.
Useful for people who want to understand aerodynamics, flow behavior, and design validation.
Fits learners targeting heat transfer, temperature distribution, and heat exchanger work.
Helps you connect design changes to fluid flow and thermal behavior.
A practical path into CFD Engineer and Simulation Engineer roles.
Relevant for engineers who need ANSYS Fluent in day-to-day product or process work.
Module-based flow: The course is organized into 10 learning modules plus project and interview preparation.
Hands-on software use: Every stage includes actual work in ANSYS Fluent and the related tools.
Project stage included: Real-time cases come after the core solver and post-processing topics.
Live online access: You can attend from anywhere while still following the instructor step by step.
4.7 Star Rating from 1,432+ Google Reviews
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Engineering teams rely on CFD before they commit to hardware, which makes simulation skills useful across design, analysis, and testing work. ANSYS Fluent sits at the center of that workflow, so learners who can set up clean models and explain results have practical value in the job market.
By the end of the course, learners can work through a simulation task with less guesswork and more control. They gain the ability to prepare models, run cases, read outputs, and explain what changed and why.
You can clean up CAD models, make named selections, and get a design ready for CFD work without losing important surfaces or regions.
You learn to generate structured and unstructured meshes, add inflation layers, and check whether the mesh is good enough for the case.
You can choose solver types, assign material properties, define boundary conditions, and set initial conditions for different scenarios.
You can study laminar and turbulent flow, heat transfer, multiphase effects, and temperature patterns in a clear way.
You learn how to use contours, vectors, streamlines, and reports to explain what the simulation is showing.
You finish with project work and career prep that helps you describe your CFD process to employers.
The course starts with CFD basics and an ANSYS Workbench overview before moving into meshing and solver setup, so newcomers are not dropped straight into advanced cases. A technical background helps, but the sequence is built to make the workflow understandable step by step.
Yes. The syllabus includes real-time projects such as pipe flow, heat exchanger simulation, airfoil aerodynamic analysis, and HVAC airflow simulation. These are used to connect the theory to actual simulation work.
Placement support is built into the training flow through resume help, mock interviews, and guidance on how to present your simulation work. The focus is on roles that match the course, such as CFD Engineer, Simulation Engineer, Thermal Analyst, and Design Engineer.
Students from related engineering backgrounds can join if they are willing to learn the CFD workflow carefully. The course is strongest for mechanical, aerospace, automotive, and thermal learners, but the software and analysis logic are also useful for design-oriented profiles.
Yes, the course is available as live online training. That format still includes instructor interaction, software demonstrations, and project discussion, so you can follow the same steps from home.
The curriculum is organized into 10 modules, moving from fundamentals to projects and interview preparation. The exact pace depends on the batch format and how the class is scheduled, but the structure is meant to cover the full workflow without skipping core topics.
You will learn the full workflow. The training includes geometry preparation in SpaceClaim, meshing in ANSYS Meshing, solver setup in Fluent, and post-processing in CFD-Post, along with validation and troubleshooting.
Inventateq offers classroom training across multiple locations. Explore the branch nearest to you and check available batch timings.
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